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Lytic xylan oxidases from wood-decay fungi unlock biomass degradation.

Nat. Chem. Biol.. 2018-03; 
CouturierMarie,LadevèzeSimon,SulzenbacherGerlind,CianoLuisa,FanuelMathieu,MoreauCéline,VillaresAna,CathalaBernard,ChaspoulFlorence,FrandsenKristian E,LabourelAurore,Herpoël-GimbertIsabelle,GriselSacha,HaonMireille,LenfantNicolas,RogniauxHélène,RopartzDavid,DaviesGideon J,RossoMarie-Noëlle,WaltonPaul H,HenrissatBernard,BerrinJean
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Gene Synthesis … The sequences corresponding to PcAA14A (Genbank ID KY769369) and PcAA14B (Genbank ID KY769370) genes from P. coccineus BRFM310 were synthesized after codon optimization for expression in P. pastoris (GenScript, Piscataway, USA) … Get A Quote

摘要

Wood biomass is the most abundant feedstock envisioned for the development of modern biorefineries. However, the cost-effective conversion of this form of biomass into commodity products is limited by its resistance to enzymatic degradation. Here we describe a new family of fungal lytic polysaccharide monooxygenases (LPMOs) prevalent among white-rot and brown-rot basidiomycetes that is active on xylans-a recalcitrant polysaccharide abundant in wood biomass. Two AA14 LPMO members from the white-rot fungus Pycnoporus coccineus substantially increase the efficiency of wood saccharification through oxidative cleavage of highly refractory xylan-coated cellulose fibers. The discovery of this unique enzyme activity ... More

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